TY - JOUR
T1 - Cytokine conversations
T2 - Fibroblasts shape macrophage identity to enhance collagen clearance
AU - Heltberg, Signe Spliid
AU - van Putten, Sander
AU - Krigslund, Oliver
AU - Nørregaard, Kirstine Sandal
AU - Ipsen, David Højland
AU - Behrendt, Niels
AU - Engelholm, Lars Henning
AU - Jürgensen, Henrik Jessen
N1 - Publisher Copyright:
© 2026 The Author(s)
PY - 2026
Y1 - 2026
N2 - Tissue remodeling critically depends on fibroblasts and macrophages, but the timely and coordinated induction of phenotypes that promote remodeling-associated extracellular matrix (ECM) and interstitial collagen degradation is poorly understood. Here, we exploit the potency of activated dermal fibroblasts and macrophage plasticity to study cell-cell interplay. We identify fibroblasts as vigorous stimulators of co-cultured macrophages’ differentiation towards a collagen-clearing phenotype. Fibroblasts secrete several soluble factors with macrophage recruitment and stimulation potential, including M-CSF, CXCL-1, CCL2, IL-6, and TIMP-1. IL-6–driven upregulation of Mannose Receptor (MR, CD206), an endocytic collagen-clearance receptor, is identified as a key macrophage effector-response. Mouse dermal in situ collagen turnover models demonstrate that macrophage MR-dependent collagen-uptake constitutes a recruitable pathway that can readily facilitate collagen degradation and links IL-6 macrophage-stimulation to the process. Importantly, a novel fibroblast depleter system reveals that fibroblasts dictate macrophage differentiation and collagen-clearance in vivo. Our study establishes activated fibroblasts as critical orchestrators of macrophage functions with potential impact on physiological tissue remodeling and fibrosis.
AB - Tissue remodeling critically depends on fibroblasts and macrophages, but the timely and coordinated induction of phenotypes that promote remodeling-associated extracellular matrix (ECM) and interstitial collagen degradation is poorly understood. Here, we exploit the potency of activated dermal fibroblasts and macrophage plasticity to study cell-cell interplay. We identify fibroblasts as vigorous stimulators of co-cultured macrophages’ differentiation towards a collagen-clearing phenotype. Fibroblasts secrete several soluble factors with macrophage recruitment and stimulation potential, including M-CSF, CXCL-1, CCL2, IL-6, and TIMP-1. IL-6–driven upregulation of Mannose Receptor (MR, CD206), an endocytic collagen-clearance receptor, is identified as a key macrophage effector-response. Mouse dermal in situ collagen turnover models demonstrate that macrophage MR-dependent collagen-uptake constitutes a recruitable pathway that can readily facilitate collagen degradation and links IL-6 macrophage-stimulation to the process. Importantly, a novel fibroblast depleter system reveals that fibroblasts dictate macrophage differentiation and collagen-clearance in vivo. Our study establishes activated fibroblasts as critical orchestrators of macrophage functions with potential impact on physiological tissue remodeling and fibrosis.
KW - Collagen endocytosis
KW - Extracellular matrix degradation
KW - Fibroblast-macrophage crosstalk
KW - Interleukin-6
KW - Macrophage phenotype
KW - Mannose receptor
U2 - 10.1016/j.matbio.2026.102010
DO - 10.1016/j.matbio.2026.102010
M3 - Journal article
C2 - 42035810
AN - SCOPUS:105037483920
SN - 0945-053X
VL - 146
JO - Matrix Biology
JF - Matrix Biology
M1 - 102010
ER -